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d9d229c
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Parent(s):
b3b800b
chore: remove b&w filters post-processing step
Browse files- filters.py +5 -16
- filters/black and white/deployment/client.zip +2 -2
- filters/black and white/deployment/server.zip +2 -2
- filters/blur/deployment/client.zip +1 -1
- filters/blur/deployment/server.zip +1 -1
- filters/identity/deployment/client.zip +1 -1
- filters/identity/deployment/server.zip +1 -1
- filters/inverted/deployment/client.zip +1 -1
- filters/inverted/deployment/server.zip +1 -1
- filters/ridge detection/deployment/client.zip +2 -2
- filters/ridge detection/deployment/server.zip +2 -2
- filters/rotate/deployment/client.zip +1 -1
- filters/rotate/deployment/server.zip +1 -1
- filters/sharpen/deployment/client.zip +1 -1
- filters/sharpen/deployment/server.zip +1 -1
filters.py
CHANGED
@@ -87,6 +87,7 @@ class TorchConv(nn.Module):
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# Ensure the kernel has a proper shape
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# If the kernel has a 1D shape, a (1, 1) kernel is used for each in_channels
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if len(kernel_shape) == 1:
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kernel = self.kernel.reshape(
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self.n_out_channels,
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self.n_in_channels // self.groups,
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@@ -151,7 +152,6 @@ class Filter:
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self.onnx_model = None
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self.fhe_circuit = None
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self.divide = None
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-
self.repeat_out_channels = False
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# Instantiate the torch module associated to the given filter name
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if filter_name == "identity":
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@@ -174,19 +174,16 @@ class Filter:
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# post-processing in order to retrieve the correct result
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kernel = [299, 587, 114]
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-
self.torch_model = TorchConv(kernel
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# Define the value used when for dividing the output values in post-processing
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self.divide = 1000
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-
# Indicate that the out_channels will need to be repeated, as Gradio requires all
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# images to have a RGB format, even for grayscaled ones
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-
self.repeat_out_channels = True
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elif filter_name == "blur":
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kernel = np.ones((3, 3))
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-
self.torch_model = TorchConv(kernel,
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# Define the value used when for dividing the output values in post-processing
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self.divide = 9
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@@ -198,7 +195,7 @@ class Filter:
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[0, -1, 0],
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]
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-
self.torch_model = TorchConv(kernel,
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elif filter_name == "ridge detection":
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kernel = [
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@@ -209,12 +206,8 @@ class Filter:
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# Additionally to the convolution operator, the filter will subtract a given threshold
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# value to the result in order to better display the ridges
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-
self.torch_model = TorchConv(kernel,
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-
# Indicate that the out_channels will need to be repeated, as Gradio requires all
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-
# images to have a RGB format, even for grayscaled ones. Ridge detection images are
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# ususally displayed as such
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self.repeat_out_channels = True
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def compile(self):
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"""Compile the filter on a representative inputset."""
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@@ -266,8 +259,4 @@ class Filter:
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# Clip the image's values to proper RGB standards as filters don't handle such constraints
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output_image = output_image.clip(0, 255)
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# Gradio requires all images to follow a RGB format
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if self.repeat_out_channels:
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output_image = output_image.repeat(3, axis=2)
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-
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return output_image
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# Ensure the kernel has a proper shape
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# If the kernel has a 1D shape, a (1, 1) kernel is used for each in_channels
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if len(kernel_shape) == 1:
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+
self.kernel = self.kernel.repeat(self.n_out_channels)
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kernel = self.kernel.reshape(
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self.n_out_channels,
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self.n_in_channels // self.groups,
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self.onnx_model = None
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self.fhe_circuit = None
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self.divide = None
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# Instantiate the torch module associated to the given filter name
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if filter_name == "identity":
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# post-processing in order to retrieve the correct result
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kernel = [299, 587, 114]
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+
self.torch_model = TorchConv(kernel)
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# Define the value used when for dividing the output values in post-processing
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self.divide = 1000
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elif filter_name == "blur":
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kernel = np.ones((3, 3))
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+
self.torch_model = TorchConv(kernel, groups=3)
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# Define the value used when for dividing the output values in post-processing
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self.divide = 9
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[0, -1, 0],
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]
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+
self.torch_model = TorchConv(kernel, groups=3)
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elif filter_name == "ridge detection":
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kernel = [
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# Additionally to the convolution operator, the filter will subtract a given threshold
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# value to the result in order to better display the ridges
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+
self.torch_model = TorchConv(kernel, threshold=900)
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def compile(self):
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"""Compile the filter on a representative inputset."""
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# Clip the image's values to proper RGB standards as filters don't handle such constraints
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output_image = output_image.clip(0, 255)
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return output_image
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filters/black and white/deployment/client.zip
CHANGED
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filters/black and white/deployment/server.zip
CHANGED
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filters/blur/deployment/client.zip
CHANGED
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filters/blur/deployment/server.zip
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filters/identity/deployment/client.zip
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filters/identity/deployment/server.zip
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filters/inverted/deployment/client.zip
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filters/inverted/deployment/server.zip
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filters/ridge detection/deployment/client.zip
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filters/ridge detection/deployment/server.zip
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filters/rotate/deployment/client.zip
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filters/rotate/deployment/server.zip
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filters/sharpen/deployment/client.zip
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